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用于免疫分析应用的配备电子供体介导信号放大的TiO/WO纳米阵列光电探测器和脂质体。

TiO/WO nanoarrays photodetector and liposomes equipped with electron donor-mediated signal amplification for immunoassay applications.

作者信息

Liu Shanghua, Li Yueyuan, Jiang Feng, Wang Mingxiang, Hou Shiyi, Li Yueyun, Wei Qin

机构信息

School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo, 255049, People's Republic of China.

School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo, 255049, People's Republic of China.

出版信息

Biosens Bioelectron. 2025 Nov 1;287:117676. doi: 10.1016/j.bios.2025.117676. Epub 2025 Jun 7.

Abstract

Exploring efficient photoelectric conversion platforms and innovative sensing strategies is the driving force of sensors to realize sensitivity detection. In this work, a photoelectrochemical (PEC) sensor integrating the type-II heterojunction of TiO/WO nanoarrays (NAs) composites and liposome-mediated electron donor equipping strategy, was present for highly sensitive immunoassays. TiO/WO NAs with the well-ordered density orientation, stable signal output, and minimal variation between batches, were an excellent PEC sensing substrate for the analysis of low abundance disease-related markers. A complete chain of evidence confirmed the successful charge carriers transfer containing density functional theory (DFT), in situ XPS (ISI-XPS), and electron paramagnetic resonance (EPR). Impressively, liposome-encapsulated electron donor (ascorbic acid) was utilized as a signal amplification strategy, which effectively shortened the distance between the electron donor and the substrate material, improved the photoelectronic conductivity of the photoelectric sensing interface. Tumor Necrosis Factor-Like Ligand 1A (TL1A) as a new target for inflammatory bowel disease to test the feasibility of this "signal-on" immunosensor in the linear range from 10.00 pg/mL to 100.00 ng/mL. The sensing model is only a small demonstration of its application potential, and we also expect that this will be a promising path to broaden the analysis of other targets.

摘要

探索高效的光电转换平台和创新的传感策略是传感器实现高灵敏度检测的驱动力。在这项工作中,提出了一种集成TiO/WO纳米阵列(NAs)复合材料的II型异质结和脂质体介导的电子供体装备策略的光电化学(PEC)传感器,用于高灵敏度免疫分析。具有有序密度取向、稳定信号输出和批次间最小变化的TiO/WO NAs是分析低丰度疾病相关标志物的优异PEC传感底物。完整的证据链证实了包含密度泛函理论(DFT)、原位X射线光电子能谱(ISI-XPS)和电子顺磁共振(EPR)的电荷载流子成功转移。令人印象深刻的是,脂质体包裹的电子供体(抗坏血酸)被用作信号放大策略,有效缩短了电子供体与底物材料之间的距离,提高了光电传感界面的光电导率。肿瘤坏死因子样配体1A(TL1A)作为炎症性肠病的新靶点,测试了这种“开启信号”免疫传感器在10.00 pg/mL至100.00 ng/mL线性范围内的可行性。该传感模型只是其应用潜力的一个小展示,我们也期望这将是拓宽其他靶点分析的一条有前景的途径。

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